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Weldability of old mild steels in maintenance of historical steel structures

机译:旧温和钢维护历史钢结构的焊接性

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Welding process causes notch effects and residual stresses. Accordingly, the risk of brittle fracture grows. In comparison with currently used steels, old mild steels have a lower toughness. The weldability of mild steel is limited and only feasible under specific conditions. If for structural reasons welding is preferred instead of the use of bolts, the metallurgical characteristics of the steels have to be considered. These include the concentrations of impurities in the zones of segregation and the tendency to embrittlement by nitrogen-induced ageing. In the corresponding paper, experimental and analytical studies of the weldability of old mild steels are presented. Extensive material analyses to determine the mechanical and the technological properties of the material will be an essential part of the investigations. Particularly, the increased impurities of phosphorus, sulfur, nitrogen and also oxygen in the segregation zones as well as the distinctive non-metallic inclusions complicate to produce load-bearing butt welds. Welding materials currently available are not designed for welding such materials. Nevertheless, in the context of a research project welding tests on old mild steels has been carried out using current welding electrodes. Supported by involved industrial partners, a stick electrode adapted to the characteristics of old steels will be developed.
机译:焊接过程导致缺口效应和残余应力。因此,脆性骨折的风险增长。与目前使用的钢相比,旧的温和钢具有较低的韧性。温和钢的可焊性是有限的,仅在特定条件下可行。如果对于结构原因,焊接优选代替使用螺栓,则必须考虑钢的冶金特性。这些包括偏析区域中的杂质的浓度和通过氮诱导的老化促成脆性的趋势。在相应的纸张中,提出了旧温和钢的可焊性的实验和分析性研究。广泛的材料分析确定材料的机械和技术特性将是调查的重要组成部分。特别地,在隔离区中增加了磷,硫,氮气和氧气的杂质以及显着的非金属夹杂物,以产生承载承载对接焊接。目前可用的焊接材料不设计用于焊接此类材料。然而,在研究项目的背景下,使用电流焊接电极进行了旧温和钢上的焊接试验。通过涉及的工业伙伴支持,将开发适用于旧钢特性的棒电极。

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